Standout Papers

<i>Pseudomonas aeruginosa</i> Displays Multiple Phenotypes during Development as a Biofilm 2002 2026 2010 2018 2.2k
  1. Pseudomonas aeruginosa Displays Multiple Phenotypes during Development as a Biofilm (2002)
    Karin Sauer, Anne K. Camper et al. Journal of Bacteriology
  2. Biofilms as Complex Differentiated Communities (2002)
    Paul Stoodley, Karin Sauer et al. Annual Review of Microbiology

Citation Impact

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Works of Karin Sauer being referenced

BdlA, a Chemotaxis Regulator Essential for Biofilm Dispersion in Pseudomonas aeruginosa
2006
Characterization of Phenotypic Changes in Pseudomonas putida in Response to Surface-Associated Growth
2001
Bacteria Present in Carotid Arterial Plaques Are Found as Biofilm Deposits Which May Contribute to Enhanced Risk of Plaque Rupture
2014
Dispersion by Pseudomonas aeruginosa requires an unusual posttranslational modification of BdlA
2012
Pseudomonas aeruginosa Displays Multiple Phenotypes during Development as a Biofilm
2002 Standout
Sticky Situations: Key Components That Control Bacterial Surface Attachment
2012
A Novel Signaling Network Essential for Regulating Pseudomonas aeruginosa Biofilm Development
2009
The genomics and proteomics of biofilm formation.
2003
Methyl‐coenzyme M formation in methanogenic archaea
2000
The MerR-Like Transcriptional Regulator BrlR Contributes to Pseudomonas aeruginosa Biofilm Tolerance
2012
His84 rather than His35 is the active site histidine in the corrinoid protein MtrA of the energy conserving methyltransferase complex from Methanobacterium thermoautotrophicum
1998
Methanol : coenzyme M methyltransferase from Methanosarcina barkeri
1998
Escaping the biofilm in more than one way: desorption, detachment or dispersion
2016
Methanol:coenzyme M methyltransferase from Methanosarcina barkeri ‐‐ substitution of the corrinoid harbouring subunit MtaC by free cob(I)alamin
1999
Methanol: Coenzyme M Methyltransferase from Methanosarcina Barkeri
1997
IL‐4‐mediated fine tuning of IL‐12p70 production by human DC
2008
Methanol: Coenzyme M Methyltransferase from Methanosarcina Barkeri
1997
Antimicrobial Tolerance of Pseudomonas aeruginosa Biofilms Is Activated during an Early Developmental Stage and Requires the Two-Component Hybrid SagS
2013
BrlR from Pseudomonas aeruginosa is a c‐di‐GMP‐responsive transcription factor
2014
The Phosphodiesterase DipA (PA5017) Is Essential for Pseudomonas aeruginosa Biofilm Dispersion
2012
Biofilms and Biocomplexity
2007
Biofilms as Complex Differentiated Communities
2002 Standout
Characterization of Colony Morphology Variants Isolated fromStreptococcus pneumoniaeBiofilms
2006
Phenotypic Characterization ofStreptococcus pneumoniaeBiofilm Development
2006
The MerR-Like Regulator BrlR Confers Biofilm Tolerance by Activating Multidrug Efflux Pumps in Pseudomonas aeruginosa Biofilms
2013
Proteomic, Microarray, and Signature-Tagged Mutagenesis Analyses of AnaerobicPseudomonas aeruginosaat pH 6.5, Likely Representing Chronic, Late-Stage Cystic Fibrosis Airway Conditions
2008
The Novel Two-Component Regulatory System BfiSR Regulates Biofilm Development by Controlling the Small RNArsmZthrough CafA
2010
Pseudomonas aeruginosaAlgR Represses the Rhl Quorum-Sensing System in a Biofilm-Specific Manner
2007
Characterization of Nutrient-Induced Dispersion in Pseudomonas aeruginosa PAO1 Biofilm
2004
Characterization of Temporal Protein Production in Pseudomonas aeruginosa Biofilms
2005
Tetramethylammonium:coenzyme M methyltransferase system from Methanococcoides sp.
1998
Elevated levels of the second messenger c‐di‐GMP contribute to antimicrobial resistance of Pseudomonas aeruginosa
2014
Rankless by CCL
2026